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Dong Wang

Researcher at Chinese Academy of Sciences

Publications -  586
Citations -  13460

Dong Wang is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Computer science & Medicine. The author has an hindex of 49, co-authored 491 publications receiving 9970 citations. Previous affiliations of Dong Wang include University of Science and Technology of China & Shanghai University.

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New Dammarane Monodesmosides from the Acidic Deglycosylation of Notoginseng‐Leaf Saponins

TL;DR: In this paper, three dammarane monodesmosides, named notoginsenosides Ft(1) (1) Ft(2) (2), and Ft(3) (3) together with three known ginsenoside, were obtained from a mild acidic hydrolysis of the saponins from notoggineng (Panax) (BURK.) F. HEN) leaves.
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On-Surface Growth of Single-Layered Homochiral 2D Covalent Organic Frameworks by Steric Hindrance Strategy.

TL;DR: Structural analysis based on high resolution scanning tunneling microscopy images and theoretical simulations indicate that the homochiral 2D COFs are generated through an enantioselective on-surface polymerization driven by the steric hindrance effect, which provides a new approach for the growth of highly regular COFs on surfaces.
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Compact beam transport system for free-electron lasers driven by a laser plasma accelerator

TL;DR: In this paper, a beam transport system is proposed to maintain the superior features of the LPA beam and a transverse gradient undulator (TGU) is also adopted as an effective energy spread compensator to generate high-brilliance FEL radiation.
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Controllable atmospheric pressure growth of mono-layer, bi-layer and tri-layer graphene

TL;DR: A three-step growth method for high-quality mono-layer, bi-layer and tri-layer graphene with coverage ~90% at atmospheric pressure is reported, of great importance for the large scale production of graphene with defined thickness.
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In situ STM evidence for adsorption of rhodamine B in solution

TL;DR: In situ scanning tunneling microscopy (STM) has been employed to investigate the adsorption of RB (rhodamine B) on solid surface in solution as discussed by the authors.